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Design of a pyroelectric charge amplifier and a piezoelectric energy harvester for a novel non-invasive wearable and self-powered respiratory monitoring system

机译:用于新型无创可穿戴和自供电呼吸监测系统的热电电荷放大器和压电能量收集器的设计

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The paper presents a novel method of respiratory monitoring system based on pyroelectric material-based sensors. The system is designed to be convenient for the neonatal infants having a chronic breathing disorder known as apnea of prematurity. The front-end circuitry is designed in a 130 nm standard CMOS process. The incorporated design topology enables the system to operate with a lower cut-off frequency below 10 mHz with a noise efficiency factor as low as 2.79. The respiration monitoring system consists of a non-invasive wearable device that consumes very low power and has the potential to be self-powered by harvesting energy from a piezoelectric transducer. The overall system is very light-weight and requires attaching fewer electrodes and wires to the patient's body in comparison with the standard methods of respiration monitoring for apnea patients.
机译:本文提出了一种基于热释电材料传感器的呼吸监测系统的新方法。该系统旨在方便患有被称为早产呼吸暂停的慢性呼吸系统疾病的新生儿。前端电路采用130 nm标准CMOS工艺设计。内置的设计拓扑使系统可以在低于10 mHz的较低截止频率下工作,且噪声效率因子低至2.79。呼吸监测系统由非侵入式可穿戴设备组成,该设备消耗的功率非常低,并且有可能通过从压电换能器中收集能量来自我供电。与呼吸暂停患者的标准呼吸监测方法相比,整个系统非常轻巧,需要将更少的电极和电线连接到患者身上。

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